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Optimization of Friction Stir Welding by fuzzy logic

机译:模糊逻辑优化摩擦搅拌焊接

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Difficulty of welding with high strength and resistance to fatigue failure of the aluminum alloys, hindering the widespread use of conventional welding methods for forming such a connection in aerospace applications. These factors led to the junction fusion welding of aluminum alloys methods quite unnoticed. Therefore, the use of solid state welding Friction welding especially Friction Stir Welding (FSW) for joining aluminum alloys system has been used widely. The parameters that effect on process are gender and tool geometry, rotational speed and forward, tilt angle and vertical force noted. In present research, the effect of rotational speed and forward on mechanical properties of 2024 aluminum alloy, evaluated by experiments .in order to do this study, because of the Wide range of parameter variations on mechanical properties, we should do several expensive experimental tests. In order to decrease the amount of experimental tests, Mamdani-Type Fuzzy implication, have been chosen. In this paper, by knowing the capability of fuzzy logic in create an intelligent relationship between the input and output data, the relationship between the forward and rotational speed as an inputs and mechanical properties as an outputs based on experimental data have been proposed. The results indicated that by adopting an appropriate fuzzy method, both the number of experimental tests and mechanical properties of welded FSW, optimized.
机译:具有高强度和对铝合金的疲劳失效电阻焊接,阻碍了广泛使用的常规的焊接方法形成在航空航天应用这种连接的难度。这些导致了结熔焊的铝合金方法因素相当被忽视。因此,对于接合铝合金系统焊接尤其搅拌摩擦焊接(FSW)使用固态摩擦焊接已被广泛使用。的参数,关于处理效果是性别和工具几何形状,旋转速度和向前,倾斜角和竖直力指出。在目前的研究,旋转速度的上2024铝合金的机械性能,通过实验评估。为了做到这一点的研究中,因为对机械性能参数变化的宽范围的效果和向前,我们应该做几个昂贵的实验测试。为了减少的实验性测试的量,马丹尼型模糊含义,已被选择的。在本文中,通过了解在创建输入数据和输出数据之间的关系智能模糊逻辑的能力,前向和旋转速度作为输入和机械特性如基于实验数据的输出之间的关系已经被提出。结果表明,通过采用适当的方法模糊,两者的实验测试和焊接FSW的机械性能的数量,优化。

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